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首页> 外文期刊>Psychopharmacology >Initial sensitivity, tolerance and cross-tolerance to allopregnanolone- and ethanol-induced hypothermia in selected mouse lines.
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Initial sensitivity, tolerance and cross-tolerance to allopregnanolone- and ethanol-induced hypothermia in selected mouse lines.

机译:所选小鼠品系对阿洛培那诺酮和乙醇诱发的体温过低的初始敏感性,耐受性和交叉耐受性。

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RATIONALE: Acute ethanol administration induces hypothermia in genetically susceptible animals. Tolerance to this effect may develop with repeated administration. Allopregnanolone is an endogenously produced neuroactive steroid that acts at the GABA-A receptor. We postulated that allopregnanolone would induce hypothermia, and that lines of mice selectively bred for high (COLD-1 and COLD-2) or low (HOT-1 and HOT-2) sensitivity to ethanol's hypothermic effects would also be differentially sensitive to allopregnanolone-induced hypothermia. We also postulated that tolerance would develop to these two drugs by similar mechanisms, such that tolerance to one would impart cross-tolerance to the other. OBJECTIVES: To assess sensitivity, tolerance and cross-tolerance to allopregnanolone's and ethanol's hypothermic effects in HOT-1 and 2, and COLD-1 and 2 mice. METHODS: Mice were administered one of several doses of allopregnanolone each day, for 4 days, and initial sensitivity and tolerance to allopregnanolone-induced hypothermia were assessed. On day 5, ethanol was administered to assess cross-tolerance. In a separate experiment, COLD-1 and 2 mice were made tolerant to ethanol's hypothermic effects, and challenged with allopregnanolone to assess cross-tolerance. RESULTS: COLD mice exhibited greater initial sensitivity to the hypothermic effect of allopregnanolone, as compared to HOT mice. Tolerance to allopregnanolone-induced hypothermia was greater in COLD mice than in HOT mice, but only COLD-1 mice showed cross-tolerance to ethanol. Both replicate lines of COLD mice developed tolerance following repeated administration of ethanol, but only COLD-2 mice showed cross-tolerance to allopregnanolone. CONCLUSIONS: These results demonstrate shared genetic influence over allopregnanolone and ethanol's initial hypothermic effects. They also suggest genotype-dependent differences in the mechanisms for tolerance to these two compounds.
机译:理由:急性乙醇给药会引起遗传易感动物的体温过低。反复给药可能会产生对此效应的耐受性。异戊烷醇酮是内源性产生的神经活性类固醇,作用于GABA-A受体。我们假设Allopregnanolone会诱发体温过低,并且选择性繁殖对乙醇的低温效应具有高(COLD-1和COLD-2)或低(HOT-1和HOT-2)敏感性的小鼠品系对Allopregnanolone-也具有不同的敏感性。引起体温过低。我们还假设通过相似的机制对这两种药物产生耐受性,因此对一种药物的耐受性将赋予另一种药物交叉耐受性。目的:评估对HOT-1和2,以及COLD-1和2小鼠对阿洛培那洛酮和乙醇的低温影响的敏感性,耐受性和交叉耐受性。方法:每天给小鼠服用几种剂量的Allopregnanolone中的一种,持续4天,并评估对Allopregnanolone诱导的体温过低的初始敏感性和耐受性。在第5天,施用乙醇以评估交叉耐受性。在一个单独的实验中,使COLD-1和2只小鼠耐受乙醇的低温效应,并用Allopregnanolone攻击以评估交叉耐受性。结果:与HOT小鼠相比,COLD小鼠对Allopregnanolone的低温效应表现出更高的初始敏感性。在COLD小鼠中对Allopregnanolone诱导的体温过低的耐受性比在HOT小鼠中高,但只有COLD-1小鼠对乙醇具有交叉耐受性。重复施用乙醇后,两个COLD小鼠复制品系均产生了耐受性,但只有COLD-2小鼠显示出对Allopregnanolone的交叉耐受性。结论:这些结果证明了对阿洛培那诺酮和乙醇最初的低温效应具有共同的遗传影响。他们还暗示了对这两种化合物的耐受机制中基因型相关的差异。

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